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Revealing Structural and Functional Vulnerability of Power Grids to Cascading Failures

机译:揭示电网的结构和功能脆弱性到级联故障

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摘要

The highly intricate inter-connectivity and ever expanding scale of modern power grids have raised serious concerns on security and vulnerability of power grids. Much of the recent study on the vulnerability of power grids to cascading failure has focused on the structural changes or functional damage of the system, and results from previous studies often draw inconsistent and even contradictory conclusions. In this paper, the causes of these diverse and inconsistent results relating to structural and functional damages have been identified. In addition, the system's vulnerability to cascading failure is studied from an attacker's perspective, and a node attack strategy maximizing structural and functional damage is considered. Specifically, the problem of finding the optimal node attack strategy is formulated as a multi-objective optimization problem, and evolutionary algorithms are used to generate optimal solutions. Simulation results on four benchmark test systems show significant advantages of the proposed algorithms over heuristic and single-objective methods, and give important insights on identifying the critical nodes affecting vulnerability of power grids.
机译:现代电网的高度复杂间连接和扩大规模已经提高了对电网的安全和脆弱性的严重关切。最近关于电网漏洞到级联失败的大部分研究的重点是系统的结构性变化或功能损坏,并且来自先前研究的结果通常会吸引不一致甚至矛盾的结论。在本文中,已经确定了与结构和功能损坏有关的这些多样化和不一致结果的原因。此外,从攻击者的角度研究了系统对级联失败的脆弱性,并且考虑了节点攻击策略最大化结构和功能损坏。具体地,将找到最佳节点攻击策略的问题被制定为多目标优化问题,并且使用进化算法来产生最佳解决方案。四个基准测试系统的仿真结果表明了提出的启发式和单目标方法的提出算法的显着优势,并对识别影响电网脆弱性的关键节点进行了重要见解。

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